High-Frequency Permeability of Fe-Based Nanostructured Materials

M. Han
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Abstract

Frequency dependence of permeability of magnetic materials is crucial for their various electromagnetic applications. In this chapter, the approaches to tailor the high-frequency permeability of Fe-based nanostructured materials are discussed: shape controlling, particle size distribution, coating treatments, phase transitions and external excitations. Special attention is paid on the electromagnetic wave absorbing using these Fe-based magnetic materials (Fe-Si-Al alloys, Fe-Cu-Nb-Si-B nanocrystalline alloys and Fe nanowires). Micromagnetic simulations also have been presented to discuss the intrinsic high-frequency permeability. Negative imaginary part of permeability ( μ ″ < 0) is proved possible under the spin transfer torque effect.
铁基纳米结构材料的高频磁导率
磁性材料磁导率的频率依赖性对其各种电磁应用至关重要。在本章中,讨论了定制铁基纳米结构材料高频磁导率的方法:形状控制、粒度分布、涂层处理、相变和外部激励。重点研究了铁基磁性材料(Fe- si - al合金、Fe- cu - nb - si -b纳米晶合金和Fe纳米线)的电磁波吸收性能。微磁模拟也被用来讨论本征高频磁导率。证明了在自旋传递转矩作用下磁导率存在负虚部(μ″< 0)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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